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ABA plays essential roles in regulating root growth by interacting with auxin and MAPK signaling pathways and cell-cycle machinery in rice seedlings
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  • 作者:Feng Yun Zhao ; Feng Xiang Cai ; Hua Jian Gao ; Shi Yong Zhang…
  • 关键词:ABA ; Auxin signaling ; Cell cycle ; MAPK
  • 刊名:Plant Growth Regulation
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:75
  • 期:2
  • 页码:535-547
  • 全文大小:7,817 KB
  • 参考文献:1. Barrero JM, Piqueras P, González-Guzmán M, Serrano R, Rodríguez PL, Ponce MR, Mico JL (2005) A mutational analysis of the ABA1 gene of / Arabidopsis thaliana highlights the involvement of ABA in vegetative development. J Exp Bot 56:2071-083 CrossRef
    2. Belin C, Megies C, Hauserová E, Lopez-Molina L (2009) Abscisic acid represses growth of the Arabidopsis embryonic axis after germination by enhancing auxin signaling. Plant Cell 21:2253-268 CrossRef
    3. Cheng WH, Endo A, Zhou L, Penney J, Chen HC, Arroyo A, Leon P, Nambara E, Asami T, Seo M, Koshiba T, Sheen J (2002) A unique short-chain dehydrogenase/reductase in Arabidopsis glucose signaling and abscisic acid biosynthesis and functions. Plant Cell 14:1-1 CrossRef
    4. De Smet I, Signora L, Beeckman T, Inzé D, Foyer CH, Zhang H (2003) An abscisic acid-sensitive checkpoint in lateral root development of Arabidopsis. Plant J 33:543-55 CrossRef
    5. Ding H, Zhang A, Wang J, Lu R, Zhang H, Zhang J, Jiang M (2009) Identity of an ABA-activated 46?kDa mitogen-activated protein kinase from / Zea mays leaves: partial purification, identification and characterization. Planta 230:239-51 CrossRef
    6. Guo J, Song J, Wang F, Zhang XS (2007) Genome-wide identification and expression analysis of rice cell cycle genes. Plant Mol Biol 64:349-60 CrossRef
    7. Guo D, Liang J, Li L (2009) Abscisic acid (ABA) inhibition of lateral root formation involves endogenous ABA biosynthesis in / Arachis hypogaea L. Plant Growth Regul 58:173-79 CrossRef
    8. He J, Duan Y, Hua D, Fan G, Wang L, Liu Y, Chen Z, Han L, Qu LJ, Gong Z (2012) DEXH box RNA helicase-mediated mitochondrial reactive oxygen species production in Arabidopsis mediates crosstalk between abscisic acid and auxin signaling. Plant Cell 24:1815-833 CrossRef
    9. Hwang SG, Chen HC, Huang WY, Chu YC, Shii CT, Cheng WH (2010) Ectopic expression of rice OsNCED3 in Arabidopsis increases ABA level and alters leaf morphology. Plant Sci 178:12-2 CrossRef
    10. Jeong MJ, Lee SK, Kim BG, Kwon TR, Cho WS, Park YT, Lee JO, Kwon HB, Byunl MO, Park SC (2006) A rice ( / Oryza sativa L.) MAP kinase gene, OsMAPK44, is involved in response to abiotic stresses. Plant Cell Tissue Organ Cult 85:151-60 CrossRef
    11. Jiang M, Zhang J (2002) Involvement of plasma-membrane NADPH oxidase in abscisic acid-and water stress-induced antioxidant defense in leaves of maize seedlings. Planta 215:1022-030 CrossRef
    12. Kim JA, Agrawal GK, Rakwal R, Han KS, Kim KN, Yun CH, Heu S, Park SY, Lee YH, Jwa NS (2003) Molecular cloning and mRNA expression analysis of a novel rice ( / Oryza sativa L.) MAPK kinase kinase, OsEDR1, an ortholog of Arabidopsis AtEDR1, reveal its role in defense/stress signalling pathways and development. Biochem Biophys Res Commun 300:868-76 CrossRef
    13. Lee MO, Cho K, Kim SH, Jeong SH, Kim JA, Jung YH, Shim J, Shibato J, Rakwal R, Tamogami S, Kubo A, Agrawal GK, Jwa NS (2008) Novel rice / OsSIPK is a multiple stress responsive MAPK family member showing rhythmic expression at mRNA level. Planta 227:981-90 CrossRef
    14. Liang Y, Mitchell DM, Harris JM (2007) Abscisic acid rescues the root meristem defects of the / Medicago truncatula latd mutant. Dev Biol 304:297-07 CrossRef
    15. Mishra NS, Tuteja R,
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Plant Physiology
  • 出版者:Springer Netherlands
  • ISSN:1573-5087
文摘
In this study, we examined the relationship between abscisic acid (ABA), auxin, and mitogen-activated protein kinase (MAPK) signaling and the cell cycle in rice (Oryza sativa L. cv. Zhonghua No. 11) roots. Root system growth was significantly promoted by 0.1?nM ABA but markedly inhibited by 0.3?mM Tungstate (TS, an ABA biosynthesis inhibitor). Detection of plants treated with DRB (an RNA synthesis inhibitor, 5,6-dichlorobenzimidazole 1-β-d-ribofuranoside), TIBA (2,3,5-triiodobenzoic acid, an inhibitor of polar auxin transport), or BFA (brefeldin, a protein transport inhibitor) using DR5-GUS staining revealed that ABA regulates the distribution of auxin via transcription and transport pathways. The expression of some auxin- and cell cycle-related genes, as well as several ABA or MAPK genes, was differentially regulated in roots by ABA and TS at 7 or 11?days, indicating that a certain level of ABA action may primarily target specific genes involved in MAPK and auxin signaling and the cell cycle at a given developmental stage. The results suggest that an appropriate level of ABA determines auxin homeostasis through controlling gene expression and the distribution of auxin, and that ABA regulates the auxin and MAPK signaling pathways and influences cell-cycle progression. Overall, ABA plays positive roles in regulating root system growth by modulating MAPK and auxin signaling and the cell cycle. Our findings help elucidate the integrative effects of ABA, auxin, and MAPK signaling and the cell cycle on root growth. We propose a working model for the role of ABA in root system growth.

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